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Gaussian plume equation derivation

Derivation of the Gaussian Plume Equation as a Solution of the Atmospheric Diffusion Equation... [Pg.854]

DERIVATION OF THE GAUSSIAN PLUME EQUATION AS A SOLUTION OF THE ATMOSPHERIC DIFFUSION EQUATION... [Pg.918]

Gaussian Plume Model. One of the most basic and widely used transport models based on equation 5 is the Gaussian plume model. Gaussian plume models for continuous sources can be obtained from statistical arguments or can be derived by solving ... [Pg.380]

Thermal plumes above point (Fig. 7.60) and line (Fig. 7.61) sources have been studied for many years. Among the earliest publications are those from Zeldovich and Schmidt. Analytical equations to calculate velocities, temperatures, and airflow rates in thermal plumes over point and line heat sources with given heat loads were derived based on the momentum and energy conservation equations, assuming Gaussian velocity and excessive temperature distribution in... [Pg.518]


See other pages where Gaussian plume equation derivation is mentioned: [Pg.262]    [Pg.862]    [Pg.919]    [Pg.921]    [Pg.926]    [Pg.1368]    [Pg.79]    [Pg.364]    [Pg.357]    [Pg.78]   
See also in sourсe #XX -- [ Pg.854 , Pg.855 , Pg.856 , Pg.857 , Pg.858 ]




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